Institute of Organismic and Molecular Evolution iOME, Anthropology, Johannes Gutenberg University Mainz, 55099 Mainz, Germany.
Primate Brain Bank, Netherlands Institute for Neuroscience, 1105 BA Amsterdam, The Netherlands.
RNA. 2020 Jun;26(6):694-707. doi: 10.1261/rna.073395.119. Epub 2020 Mar 6.
Fragments of mature tRNAs have long been considered as mere degradation products without physiological function. However, recent reports show that tRNA-derived small RNAs (tsRNAs) play prominent roles in diverse cellular processes across a wide spectrum of species. Contrasting the situation in other small RNA pathways the mechanisms behind these effects appear more diverse, more complex, and are generally less well understood. In addition, surprisingly little is known about the expression profiles of tsRNAs across different tissues and species. Here, we provide an initial overview of tsRNA expression in different species and tissues, revealing very high levels of 5' tRNA halves (5' tRHs) particularly in the primate hippocampus. We further modulated the regulation capacity of selected 5' tRHs in human cells by transfecting synthetic tsRNA mimics ("overexpression") or antisense-RNAs ("inhibition") and identified differentially expressed transcripts based on RNA-seq. We then used a novel -mer mapping approach to dissect the underlying targeting rules, suggesting that 5' tRHs silence genes in a sequence-specific manner, while the most efficient target sites align to the mid-region of the 5' tRH and are located within the CDS or 3' UTR of the target. This amends previous observations that tsRNAs guide Argonaute proteins to silence their targets via a miRNA-like 5' seed match and suggests a yet unknown mechanism of regulation. Finally, our data suggest that some 5' tRHs that are also able to sequence-specifically stabilize mRNAs as up-regulated mRNAs are also significantly enriched for 5' tRH target sites.
成熟 tRNA 的片段长期以来一直被认为是没有生理功能的单纯降解产物。然而,最近的报告表明,tRNA 衍生的小 RNA(tsRNA)在各种物种的多种细胞过程中发挥着重要作用。与其他小 RNA 途径的情况形成对比的是,这些效应背后的机制似乎更加多样化、更加复杂,而且通常理解得不够透彻。此外,关于不同组织和物种中 tsRNA 的表达谱知之甚少。在这里,我们初步概述了不同物种和组织中 tsRNA 的表达情况,揭示了 5' tRNA 半分子(5' tRHs)特别在灵长类海马体中具有非常高的水平。我们进一步通过转染合成的 tsRNA 模拟物(“过表达”)或反义 RNA(“抑制”)来调节选定的 5' tRH 的调节能力,然后根据 RNA-seq 鉴定差异表达的转录物。然后,我们使用一种新的 -mer 映射方法来剖析潜在的靶向规则,表明 5' tRH 以序列特异性的方式沉默基因,而最有效的靶位点与 5' tRH 的中部对齐,并位于靶基因的 CDS 或 3' UTR 内。这修正了之前的观察结果,即 tsRNA 通过类似 miRNA 的 5' 种子匹配引导 Argonaute 蛋白沉默其靶标,并提出了一种未知的调节机制。最后,我们的数据表明,一些能够序列特异性地稳定 mRNA 的 5' tRH 作为上调的 mRNA 也显著富集了 5' tRH 靶位点。